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首页> 外文期刊>izvestiya vysshikh uchebnykh zavedenij. chernaya metallurgiya >Modeling the stress state of steel strip at roller levelling machine under cyclic alternating deformations
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Modeling the stress state of steel strip at roller levelling machine under cyclic alternating deformations

机译:辊筒矫直机循环交变变形下钢带应力状态建模

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© 2020 National University of Science and Technology MISIS. All rights reserved.The final stage in the production of hot rolled steel is levelling on roller levellers under cyclic alternating deformation. When laser is cutting a sheet it may bend due to the release of residual stresses that are unevenly distributed over the volume. The majority of roller leveller models for calculating the process under cyclic alternating deformation does not provide an adequate assessment and prediction of residual stresses in a steel sheet. On the basis of finite element analysis, formation of residual stresses owing to roller levelling of hot rolled strip is disclosed. The implementation of a model of the levelling process was performed in SIMULIA Abaqus. Models are verificated by comparing forces under the rollers. We have experimentally confirmed the convergence of the simulation results with the measurements of the strip flatness obtained after sheets plasma cutting. It was found that after levelling, tensile longitudinal residual stresses remain on the upper surface of the sheet, compressive ones remain on the lower surface, stresses are zero in the middle in thickness, and the stress values are opposite in sign in the remaining parts of the section. It was established that the same parameters of the levelling process of different strength categories lead to different deviations of stresses. An increase in yield strength of the strip leads to an increase in the deviation of residual stresses along the strip thickness. The proposed method of simulation of roller levelling process should be used to study the stress-strain state of hot-rolled steel and to design improved strip levelling setting modes with minimal residual stress deviations.
机译:© 2020 国立科技大学-莫斯科国立钢铁合金学院保留所有权利。热轧钢生产的最后阶段是在循环交变变形下在辊子矫直机上进行矫平。当激光切割板材时,由于残余应力的释放,它可能会弯曲,残余应力不均匀地分布在体积上。大多数用于计算循环交变变形过程的辊子矫直机模型不能充分评估和预测钢板中的残余应力。在有限元分析的基础上,揭示了热轧带钢辊流平引起的残余应力的形成。在 SIMULIA Abaqus 中执行了调平过程模型的实现。通过比较滚子下的力来验证模型。我们通过实验证实了模拟结果与板材等离子切割后获得的带材平整度测量结果的收敛性。结果表明,找平后,拉伸纵向残余应力保留在板材的上表面,压缩残余应力保留在下表面,厚度中间的应力为零,截面其余部分的应力值在符号上相反。结果表明,不同强度类别的整平过程的相同参数会导致不同的应力偏差。带材屈服强度的增加导致沿带材厚度的残余应力偏差增加。利用所提出的辊子矫平过程模拟方法,研究热轧钢的应力-应变状态,设计改进的带钢矫平设置模式,残余应力偏差最小。

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